P+F 3RG4023-0JB00 Inductive Proximity Switch, High Precision & Durability

The P+F 3RG4023-0JB00 Inductive Proximity Switch is engineered for precision sensing in industrial automation systems, ensuring reliable detection across a wide range of applications.

Description

Operating Voltage:DC 10V to 30V

Sensing Distance:Up to 40mm

Switching Time:≤1ms

Current Consumption:≤10mA

Environment Temperature Range:-25°C to +85°C

Humidity:95% RH at 40°C without condensation

Protection Class:IP67

Material:Dielectric plastic

Mounting:Magnetic or screw mount

    The P+F 3RG4023-0JB00 Proximity Switch Inductive is a critical component in modern industrial automation systems, engineered to withstand challenging conditions and deliver consistent performance. Its compact design ensures seamless integration into complex machinery setups.

    Featuring a durable, robust housing, this proximity switch is ideal for applications requiring high reliability and precision. It is equipped with advanced magnetic field sensing technology, ensuring accurate object detection within its specified sensing distance.

    Withstanding rigorous testing against dust and water ingress, the 3RG4023-0JB00 is certified to IP67/IP69K standards, making it suitable for use in wet, dusty, or washdown environments commonly found in manufacturing facilities.

    The switch supports a wide operating voltage range of 10 to 30V DC, ensuring compatibility with various power sources in industrial automation setups. Its low current consumption makes it energy-efficient, contributing to reduced operational costs.

    Equipped with a non-contact NO switching element, this proximity switch provides a clean and maintenance-free operation. It utilizes a patented design that minimizes wear and tear, extending its service life and reducing downtime.

P+F 3RG4023-0JB00 Proximity Switch Inductive

Reviews

There are no reviews yet.

Be the first to review “P+F 3RG4023-0JB00 Inductive Proximity Switch, High Precision & Durability”

Your email address will not be published. Required fields are marked *